Spatial patterning of biochemical cues on the micro- and nanometer scale controls numerous cellular processes such as spreading, adhesion, migration, and proliferation. Using force microscopy we show that the lateral spacing of individual integrin receptor-ligand bonds determines the strength of cell adhesion. For spacings > or = 90 nm, focal contact formation was inhibited and the detachment forces as well as the stiffness of the cell body were significantly decreased compared to spacings < or = 50 nm. Analyzing cell detachment at the subcellular level revealed that rupture forces of focal contacts increase with loading rate as predicted by a theoretical model for adhesion clusters. Furthermore, we show that the weak link between the intra...
AbstractIntegrin-mediated adhesion is regulated by multiple features of the adhesive surface, includ...
Integrin- and cadherin-mediated adhesion is central for cell and tissue morphogenesis, allowing cell...
AbstractCell/matrix adhesions are modulated by cytoskeletal or external stresses and adapt to the me...
Spatial patterning of biochemical cues on the micro- and nanometer scale controls numerous cellular ...
Cell adhesion to extracellular matrix (ECM) is critical to various cellular processes like cell spre...
Cells can sense the density and distribution of extracellular matrix (ECM) molecules by means of ind...
Strong mechanical forces can, obviously, disrupt cell-cell and cell-matrix adhesions, e.g., cyclic u...
Focal adhesions are the anchoring points of cells to surfaces and are responsible for a large number...
For many cell types, growth, differentiation, and motility are dependent on receptor-mediated adhesi...
AbstractCell adhesion to extracellular matrices is a tightly regulated process that involves the com...
We have studied the initial phase of cell adhesion as a function of the lateral organization of indi...
Cell interactions with adhesive surfaces play a vital role in the regulation of cell proliferation, ...
Reviewing of how insoluble cues, such as adhesion to the extra-cellular matrix (ECM) or neighboring ...
α(v)β(3) integrin-mediated cell adhesion is crucially influenced by how far ligands are spaced apart...
AbstractExtracellular matrices determine cellular fate decisions through the regulation of intracell...
AbstractIntegrin-mediated adhesion is regulated by multiple features of the adhesive surface, includ...
Integrin- and cadherin-mediated adhesion is central for cell and tissue morphogenesis, allowing cell...
AbstractCell/matrix adhesions are modulated by cytoskeletal or external stresses and adapt to the me...
Spatial patterning of biochemical cues on the micro- and nanometer scale controls numerous cellular ...
Cell adhesion to extracellular matrix (ECM) is critical to various cellular processes like cell spre...
Cells can sense the density and distribution of extracellular matrix (ECM) molecules by means of ind...
Strong mechanical forces can, obviously, disrupt cell-cell and cell-matrix adhesions, e.g., cyclic u...
Focal adhesions are the anchoring points of cells to surfaces and are responsible for a large number...
For many cell types, growth, differentiation, and motility are dependent on receptor-mediated adhesi...
AbstractCell adhesion to extracellular matrices is a tightly regulated process that involves the com...
We have studied the initial phase of cell adhesion as a function of the lateral organization of indi...
Cell interactions with adhesive surfaces play a vital role in the regulation of cell proliferation, ...
Reviewing of how insoluble cues, such as adhesion to the extra-cellular matrix (ECM) or neighboring ...
α(v)β(3) integrin-mediated cell adhesion is crucially influenced by how far ligands are spaced apart...
AbstractExtracellular matrices determine cellular fate decisions through the regulation of intracell...
AbstractIntegrin-mediated adhesion is regulated by multiple features of the adhesive surface, includ...
Integrin- and cadherin-mediated adhesion is central for cell and tissue morphogenesis, allowing cell...
AbstractCell/matrix adhesions are modulated by cytoskeletal or external stresses and adapt to the me...